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17 October 2024 | Story Anthony Mthembu | Photo Supplied
Prof Tameshnie Deane
Prof Tameshnie Deane, Vice-Dean: Research, Postgraduate Studies and Internationalisation in the Faculty of Law at the University of the Free State (UFS).

The Faculty of Law at the University of the Free State (UFS) has appointed Prof Tameshnie Deane as Vice-Dean: Research, Postgraduate Studies and Internationalisation. Prof Deane officially assumed this role on 1 July 2024, following over two decades as a Professor and Head of the Criminal Law Unit at the University of South Africa (UNISA).

Prof Deane, who has approached this new position with great enthusiasm, describes it as a significant opportunity. ‘’This role allows me to influence the future of academic research and postgraduate education at UFS,’’ she said.

Support for postgraduate students

Prof Deane elaborated on her vision, saying, “My aim is to develop and implement strategies that elevate the quality and impact of research, foster innovation, and support postgraduate students in achieving their academic and professional goals.”

Among her top priorities is strengthening support for postgraduate students at the UFS. “I plan to introduce comprehensive mentorship programmes where experienced faculty members guide students through their academic and research journeys. We will offer training in key skills such as legal writing, research methodologies, and public speaking, while also prioritising initiatives to support their mental and emotional well-being,’’ she explained.

Prof Deane emphasised that creating a dynamic and supportive environment will contribute to academic excellence and personal growth for postgraduate students at the UFS.

Enhancing internationalisation and strategic collaborations

Prof Deane is also committed to advancing the internationalisation of the Faculty of Law.  “We aim to provide opportunities for international collaboration and exchange, which will broaden the scope and impact of our research and postgraduate programmes,’’ she said.

Improving research quality and output remains a core objective, with Prof Deane identifying this as central to her new role.

One of the initiatives Prof Deane is eager to lead is the development of strategic partnerships with industry and academic institutions. “Collaborations like these will provide invaluable resources for research projects,” she noted.

To foster these partnerships, Prof Deane plans to leverage technology to strengthen communication and collaboration, support relationship-building events, and promote interdisciplinary projects that encourage diverse perspectives and innovative solutions. 

News Archive

Link between champagne bubbles and the UFS?
2012-11-16

Prof. Lodewyk Kock with an example of a front page of the publication FEMS Yeast Research, as adapted by F. Belliard, FEMS Central Office.
Photo: Leatitia Pienaar
15 November 2012

What is the link between the bubbles in champagne and breakthrough research being done at the Mayo Clinic in America? Nano research being done at our university.

Prof. Lodewyk Kock of Biotechnology says a human being consists of millions of minute cells that are invisible to the eye. The nano technology team at the UFS have developed a technique that allows researchers to look into such a cell, as well as other microorganisms. In this way, they can get an idea of what the cell’s “insides” look like.

The UFS team – consisting of Profs. Kock, Hendrik Swart (Physics), Pieter van Wyk (Centre for Microscopy), as well as Dr Chantel Swart (Biotechnology), Dr Carlien Pohl (Biotechnology) and Liza Coetsee (Physics) – were amazed to see that the inside of cells consist of a maze of small tunnels or blisters. Each tunnel is about 100 and more nanometres in diameter – about one ten thousandth of a millimetre – that weaves through the cells in a maze.

It was also found that these tunnels are the “lungs” of the cells. Academics doing research on yeast have had to sit up and take notice of the research being done at the UFS – to the extent that these “lungs” will appear on the front page of the highly acclaimed FEMS Yeast Research for all of 2013.

The Mayo Clinic, in particular, now wants to work with the UFS to study cancer cells in more detail in order to fight this disease, says Prof. Kock. The National Cancer Institute of America has also shown interest. This new nano technology for biology can assist in the study and development of nano medicine that can be used in the treatment of cancer and other life threatening diseases. Nano medicine uses nano metal participles that are up to one billionth of a metre in size.

Prof. Kock says laboratory tests indicate that nano medicine can improve the efficacy of anti-cancer medicine, which makes the treatment less toxic. “According to the Mayo Clinic team, nano particles are considered as a gold cartridge which is being fired directly at a cancer tumour. This is compared to fine shot that spreads through the body and also attacks healthy cells.”

“This accuracy implies that the chemotherapy dose can be lowered with fewer side effects. The Mayo Clinic found that one-tenth of the normal dosage is more effective against pancreas cancer in this way than the full dosage with a linkage to nano particles. According to the clinic, this nano medicine could also delay the spread of cancer,” says Prof. Kock.

The nano particles are used as messengers that convey anti-cancer treatment to cancer cells, where it then selectively kills the cancer cells. The transport and transfer of these medicines with regard to gold nano particles can be traced with the UFS’s nano technology to collect more information, especially where it works on the cell.

“With the new nano technology of the UFS, it is possible to do nano surgery on the cells by slicing the cells in nanometre thin slices while the working of the nano medicine is studied. In this way, it can be established if the nano medicine penetrates the cells or if it is only associated with the tiny tunnels,” says Prof. Kock.

And in champagne the small “lungs” are responsible for the bubbles. The same applies to beer and with this discovery a whole new reach field opens for scientists.

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